从具有可想象的生物合成稳定性的 Latania loddegesii 内生菌黑曲霉中生产和生物加工表霉素 B:抗癌、抗伤口愈合活性和细胞周期分析。

IF 4.3 2区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Microbial Cell Factories Pub Date : 2024-08-16 DOI:10.1186/s12934-024-02495-x
Sara Refaat, Eman Fikry, Nora Tawfeek, Ashraf S A El-Sayed, Maher M El-Domiaty, Azza M El-Shafae
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引用次数: 0

摘要

埃博霉素是治疗实体瘤的常用抗癌药物之一,因为它与β-微管蛋白微管有特殊的结合亲和力,能稳定微管的解体,最终导致细胞生长停滞。表霉素最初是从 Sornagium cellulosum 中分离出来的,但其生长速度极慢,表霉素的产量也很低。因此,筛选一种居住在药用植物中的新型真菌内生菌,使其具有更高的表霉素生产率和生长控制的可行性是我们的目标。Latania loddegesii 的内生菌黑曲霉 EFBL-SR OR342867 被认为是一种高效的表皮生长素生产菌(140.2 μg/L)。通过高效液相色谱、傅立叶变换红外光谱和液相色谱-电离串联质谱/质谱分析,确定了经 TLC 纯化的黑僵菌推定样品的化学结构特征,其分子结构与真品表硫酮 B 相同。纯化的 A. niger 表皮霉素 B 对 MCF-7(0.022 μM)、HepG-2(0.037 μM)和 HCT-116(0.12 μM)具有抗性,选择性指数分别为 21.8、12.9 和 4。纯化的埃博霉素 B 对 HepG-2 和 MCF-7 细胞具有潜在的抗伤口愈合活性,与未处理的细胞相比,24 小时后的抗伤口愈合活性分别为 ~ 54.07% 和 60.0%。纯化的埃博霉素具有显著的抗增殖作用,可使 MCF-7 细胞生长在 G2/M 期停止约 2.1 倍,诱导细胞完全凋亡约 12.2 倍(与对照细胞比较)。通过响应面方法优化了黑僵菌的表硫酮 B 生产率,比对照组提高了约 1.4 倍(266.9 μg/L)。在 4 ° C 下斜坡培养 6 个月后,黑僵菌的表硫酮生产率降低了约 2.4 倍,但使用 Loddegesii 的乙酸乙酯提取物后,表硫酮生产率略有恢复,这证实了植物源化学信号部分触发了黑僵菌表硫酮的生物合成基因。因此,这是第一份强调黑僵菌(L. loddegesii 的内生菌)具有生产表皮霉素 B 的代谢能力的报告,这可能是工业化生产这种药物的一个新平台。
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Production and bioprocessing of epothilone B from Aspergillus niger, an endophyte of Latania loddegesii, with a conceivable biosynthetic stability: anticancer, anti-wound healing activities and cell cycle analysis.

Epothilones are one of the common prescribed anticancer drugs for solid tumors, for their exceptional binding affinity with β-tubulin microtubule, stabilizing their disassembly, causing an ultimate arrest to the cellular growth. Epothilones were initially isolated from Sornagium cellulosum, however, their extremely slow growth rate and low yield of epothilone is the challenge. So, screening for a novel fungal endophyte dwelling medicinal plants, with higher epothilone productivity and feasibility of growth manipulation was the objective. Aspergillus niger EFBL-SR OR342867, an endophyte of Latania loddegesii, has been recognized as the heady epothilone producer (140.2 μg/L). The chemical structural identity of the TLC-purified putative sample of A. niger was resolved from the HPLC, FTIR and LC-ESI-MS/MS analyses, with an identical molecular structure of the authentic epothilone B. The purified A. niger epothilone B showed a resilient activity against MCF-7 (0.022 μM), HepG-2 (0.037 μM), and HCT-116 (0.12 μM), with selectivity indices 21.8, 12.9 and 4, respectively. The purified epothilone B exhibited a potential anti-wound healing activity to HepG-2 and MCF-7 cells by ~ 54.07 and 60.0%, respectively, after 24 h, compared to the untreated cells. The purified epothilone has a significant antiproliferative effect by arresting the cellular growth of MCF-7 at G2/M phase by ~ 2.1 folds, inducing the total apoptosis by ~ 12.2 folds, normalized to the control cells. The epothilone B productivity by A. niger was optimized by the response surface methodology, with ~ 1.4 fold increments (266.9 μg/L), over the control. The epothilone productivity by A. niger was reduced by ~ 2.4 folds by 6 months storage as a slope culture at 4 °C, however, the epothilone productivity was slightly restored with ethylacetate extracts of L. loddegesii, confirming the plant-derived chemical signals that partially triggers the biosynthetic genes of A. niger epothilones. So, this is the first report emphasizing the metabolic potency of A. niger, an endophyte of L. loddegesii, to produce epothilone B, that could be a new platform for industrial production of this drug.

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来源期刊
Microbial Cell Factories
Microbial Cell Factories 工程技术-生物工程与应用微生物
CiteScore
9.30
自引率
4.70%
发文量
235
审稿时长
2.3 months
期刊介绍: Microbial Cell Factories is an open access peer-reviewed journal that covers any topic related to the development, use and investigation of microbial cells as producers of recombinant proteins and natural products, or as catalyzers of biological transformations of industrial interest. Microbial Cell Factories is the world leading, primary research journal fully focusing on Applied Microbiology. The journal is divided into the following editorial sections: -Metabolic engineering -Synthetic biology -Whole-cell biocatalysis -Microbial regulations -Recombinant protein production/bioprocessing -Production of natural compounds -Systems biology of cell factories -Microbial production processes -Cell-free systems
期刊最新文献
De novo biosynthesis of β-Arbutin in Komagataella phaffii based on metabolic engineering strategies. The influence of growth rate-controlling feeding strategy on the surfactin production in Bacillus subtilis bioreactor processes. Novel nanoconjugates of metal oxides and natural red pigment from the endophyte Monascus ruber using solid-state fermentation. Continuous production of chitooligosaccharides in a column reactor by the PUF-immobilized whole cell enzymes of Mucor circinelloides IBT-83. Correction: Enhancement of vitamin B6 production driven by omics analysis combined with fermentation optimization.
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